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*
* Licensed to the Apache Software Foundation (ASF) under one
* or more contributor license agreements. See the NOTICE file
* distributed with this work for additional information
* regarding copyright ownership. The ASF licenses this file
* to you under the Apache License, Version 2.0 (the
* "License"); you may not use this file except in compliance
* with the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing,
* software distributed under the License is distributed on an
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* KIND, either express or implied. See the License for the
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// MARKER(update_precomp.py): autogen include statement, do not remove
#include "precompiled_chart2.hxx"
#include "StockChartTypeTemplate.hxx"
#include "macros.hxx"
#include "DataSeriesHelper.hxx"
#include "StockDataInterpreter.hxx"
#include "CartesianCoordinateSystem.hxx"
#include "AxisHelper.hxx"
#include "DiagramHelper.hxx"
#include "servicenames_charttypes.hxx"
#include "servicenames_coosystems.hxx"
#include "ContainerHelper.hxx"
#include "AxisIndexDefines.hxx"
#include <com/sun/star/chart2/AxisType.hpp>
#include <com/sun/star/chart2/data/XDataSource.hpp>
#include <com/sun/star/chart2/XChartTypeContainer.hpp>
#include <com/sun/star/chart2/XDataSeriesContainer.hpp>
#include "PropertyHelper.hxx"
#include <com/sun/star/beans/PropertyAttribute.hpp>
#include <com/sun/star/drawing/LineStyle.hpp>
#include <vector>
#include <algorithm>
using namespace ::com::sun::star;
using namespace ::com::sun::star::chart2;
using ::com::sun::star::uno::Reference;
using ::com::sun::star::uno::Sequence;
using ::rtl::OUString;
using ::com::sun::star::beans::Property;
using ::com::sun::star::uno::Any;
using ::osl::MutexGuard;
// ----------------------------------------
namespace
{
static const OUString lcl_aServiceName(
RTL_CONSTASCII_USTRINGPARAM( "com.sun.star.chart2.StockChartTypeTemplate" ));
enum
{
PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME,
PROP_STOCKCHARTTYPE_TEMPLATE_OPEN,
PROP_STOCKCHARTTYPE_TEMPLATE_LOW_HIGH,
PROP_STOCKCHARTTYPE_TEMPLATE_JAPANESE
};
void lcl_AddPropertiesToVector(
::std::vector< Property > & rOutProperties )
{
rOutProperties.push_back(
Property( C2U( "Volume" ),
PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME,
::getBooleanCppuType(),
beans::PropertyAttribute::BOUND
| beans::PropertyAttribute::MAYBEDEFAULT ));
rOutProperties.push_back(
Property( C2U( "Open" ),
PROP_STOCKCHARTTYPE_TEMPLATE_OPEN,
::getBooleanCppuType(),
beans::PropertyAttribute::BOUND
| beans::PropertyAttribute::MAYBEDEFAULT ));
rOutProperties.push_back(
Property( C2U( "LowHigh" ),
PROP_STOCKCHARTTYPE_TEMPLATE_LOW_HIGH,
::getBooleanCppuType(),
beans::PropertyAttribute::BOUND
| beans::PropertyAttribute::MAYBEDEFAULT ));
rOutProperties.push_back(
Property( C2U( "Japanese" ),
PROP_STOCKCHARTTYPE_TEMPLATE_JAPANESE,
::getBooleanCppuType(),
beans::PropertyAttribute::BOUND
| beans::PropertyAttribute::MAYBEDEFAULT ));
}
struct StaticStockChartTypeTemplateDefaults_Initializer
{
::chart::tPropertyValueMap* operator()()
{
static ::chart::tPropertyValueMap aStaticDefaults;
lcl_AddDefaultsToMap( aStaticDefaults );
return &aStaticDefaults;
}
private:
void lcl_AddDefaultsToMap( ::chart::tPropertyValueMap & rOutMap )
{
::chart::PropertyHelper::setPropertyValueDefault( rOutMap, PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME, false );
::chart::PropertyHelper::setPropertyValueDefault( rOutMap, PROP_STOCKCHARTTYPE_TEMPLATE_OPEN, false );
::chart::PropertyHelper::setPropertyValueDefault( rOutMap, PROP_STOCKCHARTTYPE_TEMPLATE_LOW_HIGH, true );
::chart::PropertyHelper::setPropertyValueDefault( rOutMap, PROP_STOCKCHARTTYPE_TEMPLATE_JAPANESE, false );
}
};
struct StaticStockChartTypeTemplateDefaults : public rtl::StaticAggregate< ::chart::tPropertyValueMap, StaticStockChartTypeTemplateDefaults_Initializer >
{
};
struct StaticStockChartTypeTemplateInfoHelper_Initializer
{
::cppu::OPropertyArrayHelper* operator()()
{
static ::cppu::OPropertyArrayHelper aPropHelper( lcl_GetPropertySequence() );
return &aPropHelper;
}
private:
Sequence< Property > lcl_GetPropertySequence()
{
::std::vector< ::com::sun::star::beans::Property > aProperties;
lcl_AddPropertiesToVector( aProperties );
::std::sort( aProperties.begin(), aProperties.end(),
::chart::PropertyNameLess() );
return ::chart::ContainerHelper::ContainerToSequence( aProperties );
}
};
struct StaticStockChartTypeTemplateInfoHelper : public rtl::StaticAggregate< ::cppu::OPropertyArrayHelper, StaticStockChartTypeTemplateInfoHelper_Initializer >
{
};
struct StaticStockChartTypeTemplateInfo_Initializer
{
uno::Reference< beans::XPropertySetInfo >* operator()()
{
static uno::Reference< beans::XPropertySetInfo > xPropertySetInfo(
::cppu::OPropertySetHelper::createPropertySetInfo(*StaticStockChartTypeTemplateInfoHelper::get() ) );
return &xPropertySetInfo;
}
};
struct StaticStockChartTypeTemplateInfo : public rtl::StaticAggregate< uno::Reference< beans::XPropertySetInfo >, StaticStockChartTypeTemplateInfo_Initializer >
{
};
} // anonymous namespace
// ----------------------------------------
namespace chart
{
StockChartTypeTemplate::StockChartTypeTemplate(
uno::Reference<
uno::XComponentContext > const & xContext,
const ::rtl::OUString & rServiceName,
StockVariant eVariant,
bool bJapaneseStyle ) :
ChartTypeTemplate( xContext, rServiceName ),
::property::OPropertySet( m_aMutex ),
m_eStockVariant( eVariant )
{
setFastPropertyValue_NoBroadcast(
PROP_STOCKCHARTTYPE_TEMPLATE_OPEN,
uno::makeAny( ( eVariant == OPEN_LOW_HI_CLOSE ||
eVariant == VOL_OPEN_LOW_HI_CLOSE )));
setFastPropertyValue_NoBroadcast(
PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME,
uno::makeAny( ( eVariant == VOL_LOW_HI_CLOSE ||
eVariant == VOL_OPEN_LOW_HI_CLOSE )));
setFastPropertyValue_NoBroadcast(
PROP_STOCKCHARTTYPE_TEMPLATE_JAPANESE,
uno::makeAny( bJapaneseStyle ));
}
StockChartTypeTemplate::~StockChartTypeTemplate()
{}
// ____ OPropertySet ____
uno::Any StockChartTypeTemplate::GetDefaultValue( sal_Int32 nHandle ) const
throw(beans::UnknownPropertyException)
{
const tPropertyValueMap& rStaticDefaults = *StaticStockChartTypeTemplateDefaults::get();
tPropertyValueMap::const_iterator aFound( rStaticDefaults.find( nHandle ) );
if( aFound == rStaticDefaults.end() )
return uno::Any();
return (*aFound).second;
}
::cppu::IPropertyArrayHelper & SAL_CALL StockChartTypeTemplate::getInfoHelper()
{
return *StaticStockChartTypeTemplateInfoHelper::get();
}
// ____ XPropertySet ____
uno::Reference< beans::XPropertySetInfo > SAL_CALL StockChartTypeTemplate::getPropertySetInfo()
throw (uno::RuntimeException)
{
return *StaticStockChartTypeTemplateInfo::get();
}
sal_Int32 StockChartTypeTemplate::getAxisCountByDimension( sal_Int32 nDimension )
{
// one x-axis
if( nDimension <= 0 )
return 1;
// no further axes
if( nDimension >= 2 )
return 0;
// one or two y-axes depending on volume
OSL_ASSERT( nDimension == 1 );
bool bHasVolume = false;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME ) >>= bHasVolume;
return bHasVolume ? 2 : 1;
}
void SAL_CALL StockChartTypeTemplate::applyStyle(
const Reference< chart2::XDataSeries >& xSeries,
::sal_Int32 nChartTypeIndex,
::sal_Int32 nSeriesIndex,
::sal_Int32 nSeriesCount )
throw (uno::RuntimeException)
{
ChartTypeTemplate::applyStyle( xSeries, nChartTypeIndex, nSeriesIndex, nSeriesCount );
try
{
sal_Int32 nNewAxisIndex = 0;
bool bHasVolume = false;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME ) >>= bHasVolume;
if( bHasVolume )
{
if( nChartTypeIndex != 0 )
nNewAxisIndex = 1;
}
Reference< beans::XPropertySet > xProp( xSeries, uno::UNO_QUERY );
if( xProp.is() )
xProp->setPropertyValue( C2U("AttachedAxisIndex"), uno::makeAny( nNewAxisIndex ) );
if( bHasVolume && nChartTypeIndex==0 )
{
//switch lines off for volume bars
DataSeriesHelper::setPropertyAlsoToAllAttributedDataPoints( xSeries, C2U( "BorderStyle" ), uno::makeAny( drawing::LineStyle_NONE ) );
}
else
{
//ensure that lines are on
if( xProp.is() )
{
drawing::LineStyle eStyle = drawing::LineStyle_NONE;
xProp->getPropertyValue( C2U("LineStyle") ) >>= eStyle;
if( eStyle == drawing::LineStyle_NONE )
xProp->setPropertyValue( C2U("LineStyle"), uno::makeAny( drawing::LineStyle_SOLID ));
}
}
}
catch( uno::Exception & ex )
{
ASSERT_EXCEPTION( ex );
}
}
void SAL_CALL StockChartTypeTemplate::resetStyles(
const Reference< chart2::XDiagram >& xDiagram )
throw (uno::RuntimeException)
{
ChartTypeTemplate::resetStyles( xDiagram );
if( getDimension() == 3 )
{
::std::vector< Reference< chart2::XDataSeries > > aSeriesVec(
DiagramHelper::getDataSeriesFromDiagram( xDiagram ));
for( ::std::vector< Reference< chart2::XDataSeries > >::iterator aIt( aSeriesVec.begin());
aIt != aSeriesVec.end(); ++aIt )
{
Reference< beans::XPropertySet > xProp( *aIt, uno::UNO_QUERY );
if( xProp.is() )
xProp->setPropertyValue( C2U("AttachedAxisIndex"), uno::makeAny( sal_Int32(0) ) );
}
}
DiagramHelper::setVertical( xDiagram, false );
}
Reference< XChartType > StockChartTypeTemplate::getChartTypeForIndex( sal_Int32 nChartTypeIndex )
{
Reference< XChartType > xCT;
Reference< lang::XMultiServiceFactory > xFact(
GetComponentContext()->getServiceManager(), uno::UNO_QUERY );
if(xFact.is())
{
bool bHasVolume = false;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME ) >>= bHasVolume;
if( bHasVolume )
{
if( nChartTypeIndex == 0 )
xCT.set( xFact->createInstance( CHART2_SERVICE_NAME_CHARTTYPE_COLUMN ), uno::UNO_QUERY );
else if( nChartTypeIndex == 1 )
xCT.set( xFact->createInstance( CHART2_SERVICE_NAME_CHARTTYPE_CANDLESTICK ), uno::UNO_QUERY );
else
xCT.set( xFact->createInstance( CHART2_SERVICE_NAME_CHARTTYPE_LINE ), uno::UNO_QUERY );
}
else
{
if( nChartTypeIndex == 0 )
xCT.set( xFact->createInstance( CHART2_SERVICE_NAME_CHARTTYPE_CANDLESTICK ), uno::UNO_QUERY );
else
xCT.set( xFact->createInstance( CHART2_SERVICE_NAME_CHARTTYPE_LINE ), uno::UNO_QUERY );
}
}
return xCT;
}
void StockChartTypeTemplate::createChartTypes(
const Sequence< Sequence< Reference< XDataSeries > > > & aSeriesSeq,
const Sequence< Reference< XCoordinateSystem > > & rCoordSys,
const Sequence< Reference< XChartType > >& /* aOldChartTypesSeq */ )
{
if( rCoordSys.getLength() < 1 )
return;
try
{
Reference< lang::XMultiServiceFactory > xFact(
GetComponentContext()->getServiceManager(), uno::UNO_QUERY_THROW );
bool bHasVolume = false;
bool bShowFirst = false;
bool bJapaneseStyle = false;
bool bShowHighLow = true;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME ) >>= bHasVolume;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_OPEN ) >>= bShowFirst;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_JAPANESE ) >>= bJapaneseStyle;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_LOW_HIGH ) >>= bShowHighLow;
sal_Int32 nSeriesIndex = 0;
std::vector< Reference< chart2::XChartType > > aChartTypeVec;
// Bars (Volume)
// -------------
if( bHasVolume )
{
// chart type
Reference< XChartType > xCT(
xFact->createInstance(
CHART2_SERVICE_NAME_CHARTTYPE_COLUMN ), uno::UNO_QUERY_THROW );
aChartTypeVec.push_back( xCT );
if( aSeriesSeq.getLength() > nSeriesIndex &&
aSeriesSeq[nSeriesIndex].getLength() > 0 )
{
Reference< XDataSeriesContainer > xDSCnt( xCT, uno::UNO_QUERY_THROW );
xDSCnt->setDataSeries( aSeriesSeq[ nSeriesIndex ] );
}
++nSeriesIndex;
}
Reference< XChartType > xCT(
xFact->createInstance(
CHART2_SERVICE_NAME_CHARTTYPE_CANDLESTICK ), uno::UNO_QUERY_THROW );
aChartTypeVec.push_back( xCT );
Reference< beans::XPropertySet > xCTProp( xCT, uno::UNO_QUERY );
if( xCTProp.is())
{
xCTProp->setPropertyValue( C2U("Japanese"), uno::makeAny( bJapaneseStyle ));
xCTProp->setPropertyValue( C2U("ShowFirst"), uno::makeAny( bShowFirst ));
xCTProp->setPropertyValue( C2U("ShowHighLow"), uno::makeAny( bShowHighLow ));
}
if( aSeriesSeq.getLength() > nSeriesIndex &&
aSeriesSeq[ nSeriesIndex ].getLength() > 0 )
{
Reference< XDataSeriesContainer > xDSCnt( xCT, uno::UNO_QUERY_THROW );
xDSCnt->setDataSeries( aSeriesSeq[ nSeriesIndex ] );
}
++nSeriesIndex;
// Lines (remaining series)
// ------------------------
if( aSeriesSeq.getLength() > nSeriesIndex &&
aSeriesSeq[ nSeriesIndex ].getLength() > 0 )
{
xCT.set(
xFact->createInstance(
CHART2_SERVICE_NAME_CHARTTYPE_LINE ), uno::UNO_QUERY_THROW );
aChartTypeVec.push_back( xCT );
Reference< XDataSeriesContainer > xDSCnt( xCT, uno::UNO_QUERY_THROW );
xDSCnt->setDataSeries( aSeriesSeq[ nSeriesIndex ] );
}
Reference< XChartTypeContainer > xCTCnt( rCoordSys[ 0 ], uno::UNO_QUERY_THROW );
xCTCnt->setChartTypes( ::chart::ContainerHelper::ContainerToSequence(aChartTypeVec) );
}
catch( uno::Exception & ex )
{
ASSERT_EXCEPTION( ex );
}
}
// ____ XChartTypeTemplate ____
sal_Bool SAL_CALL StockChartTypeTemplate::matchesTemplate(
const uno::Reference< XDiagram >& xDiagram,
sal_Bool /* bAdaptProperties */ )
throw (uno::RuntimeException)
{
sal_Bool bResult = sal_False;
if( ! xDiagram.is())
return bResult;
try
{
sal_Bool bHasVolume = false, bHasOpenValue = false, bHasJapaneseStyle = false;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_VOLUME ) >>= bHasVolume;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_OPEN ) >>= bHasOpenValue;
getFastPropertyValue( PROP_STOCKCHARTTYPE_TEMPLATE_JAPANESE ) >>= bHasJapaneseStyle;
Reference< chart2::XChartType > xVolumeChartType;
Reference< chart2::XChartType > xCandleStickChartType;
Reference< chart2::XChartType > xLineChartType;
sal_Int32 nNumberOfChartTypes = 0;
Reference< XCoordinateSystemContainer > xCooSysCnt(
xDiagram, uno::UNO_QUERY_THROW );
Sequence< Reference< XCoordinateSystem > > aCooSysSeq(
xCooSysCnt->getCoordinateSystems());
for( sal_Int32 i=0; i<aCooSysSeq.getLength(); ++i )
{
Reference< XChartTypeContainer > xCTCnt( aCooSysSeq[i], uno::UNO_QUERY_THROW );
Sequence< Reference< XChartType > > aChartTypeSeq( xCTCnt->getChartTypes());
for( sal_Int32 j=0; j<aChartTypeSeq.getLength(); ++j )
{
if( aChartTypeSeq[j].is())
{
++nNumberOfChartTypes;
if( nNumberOfChartTypes > 3 )
break;
OUString aCTService = aChartTypeSeq[j]->getChartType();
if( aCTService.equals( CHART2_SERVICE_NAME_CHARTTYPE_COLUMN ))
xVolumeChartType.set( aChartTypeSeq[j] );
else if( aCTService.equals( CHART2_SERVICE_NAME_CHARTTYPE_CANDLESTICK ))
xCandleStickChartType.set( aChartTypeSeq[j] );
else if( aCTService.equals( CHART2_SERVICE_NAME_CHARTTYPE_LINE ))
xLineChartType.set( aChartTypeSeq[j] );
}
}
if( nNumberOfChartTypes > 3 )
break;
}
if( xCandleStickChartType.is() &&
( ( bHasVolume &&
xVolumeChartType.is() ) ||
( ! bHasVolume &&
! xVolumeChartType.is() )))
{
bResult = true;
// check for japanese style
Reference< beans::XPropertySet > xCTProp( xCandleStickChartType, uno::UNO_QUERY );
if( xCTProp.is())
{
sal_Bool bJapaneseProp = sal_False;
xCTProp->getPropertyValue( C2U("Japanese")) >>= bJapaneseProp;
bResult = bResult && ( bHasJapaneseStyle == bJapaneseProp );
// in old chart japanese == showFirst
sal_Bool bShowFirstProp = sal_False;
xCTProp->getPropertyValue( C2U("ShowFirst")) >>= bShowFirstProp;
bResult = bResult && ( bHasOpenValue == bShowFirstProp );
}
}
}
catch( uno::Exception & ex )
{
ASSERT_EXCEPTION( ex );
}
return bResult;
}
Reference< XChartType > SAL_CALL StockChartTypeTemplate::getChartTypeForNewSeries(
const uno::Sequence< Reference< chart2::XChartType > >& aFormerlyUsedChartTypes )
throw (uno::RuntimeException)
{
Reference< chart2::XChartType > xResult;
try
{
Reference< lang::XMultiServiceFactory > xFact(
GetComponentContext()->getServiceManager(), uno::UNO_QUERY_THROW );
xResult.set( xFact->createInstance(
CHART2_SERVICE_NAME_CHARTTYPE_LINE ), uno::UNO_QUERY_THROW );
ChartTypeTemplate::copyPropertiesFromOldToNewCoordianteSystem( aFormerlyUsedChartTypes, xResult );
}
catch( uno::Exception & ex )
{
ASSERT_EXCEPTION( ex );
}
return xResult;
}
Reference< XDataInterpreter > SAL_CALL StockChartTypeTemplate::getDataInterpreter()
throw (uno::RuntimeException)
{
if( ! m_xDataInterpreter.is())
m_xDataInterpreter.set( new StockDataInterpreter( m_eStockVariant, GetComponentContext() ) );
return m_xDataInterpreter;
}
// ----------------------------------------
Sequence< OUString > StockChartTypeTemplate::getSupportedServiceNames_Static()
{
Sequence< OUString > aServices( 2 );
aServices[ 0 ] = lcl_aServiceName;
aServices[ 1 ] = C2U( "com.sun.star.chart2.ChartTypeTemplate" );
return aServices;
}
// implement XServiceInfo methods basing upon getSupportedServiceNames_Static
APPHELPER_XSERVICEINFO_IMPL( StockChartTypeTemplate, lcl_aServiceName );
IMPLEMENT_FORWARD_XINTERFACE2( StockChartTypeTemplate, ChartTypeTemplate, OPropertySet )
IMPLEMENT_FORWARD_XTYPEPROVIDER2( StockChartTypeTemplate, ChartTypeTemplate, OPropertySet )
} // namespace chart